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计算机控制的多壁碳纳米管吸入暴露系统。

Computer controlled multi-walled carbon nanotube inhalation exposure system.

作者信息

McKinney Walter, Chen Bean, Frazer Dave

机构信息

Centers for Disease Control and Prevention/The National Institute for Occupational Safety and Health, Morgantown, WV 26505, USA.

出版信息

Inhal Toxicol. 2009 Oct;21(12):1053-61. doi: 10.1080/08958370802712713.

Abstract

Inhalation exposure systems are necessary tools for determining the dose-response relationship of inhaled toxicants under a variety of exposure conditions. The objective of this project was to develop an automated computer controlled system to expose small laboratory animals to precise concentrations of airborne multi-walled carbon nanotubes (MWCNT). An aerosol generator was developed which was capable of suspending a respirable fraction of multi-walled carbon nanotubes from bulk material. The output of the generator was used to expose small laboratory animals to constant aerosol concentrations up to 12 mg/m(3). Particle distribution and morphology of the MWCNT aerosol delivered to the exposure chamber were measured and compared to samples previously taken from air inside a facility that produces MWCNT. The comparison showed the MWCNT generator was producing particles similar in size and shape to those found in a work environment. The inhalation exposure system combined air flow controllers, particle monitors, data acquisition devices, and custom software with automatic feedback control to achieve constant and repeatable exposure chamber temperature, relative humidity, pressure, aerosol concentration, and particle size distribution. The automatic control algorithm was capable of maintaining the mean aerosol concentration to within 0.1 mg/m(3) of the selected target value, and it could reach 95% of the target value in less than 10 minutes during the start-up of an inhalation exposure. One of the major advantages of this system was that once the exposure parameters were selected, a minimum amount of operator intervention was required over the exposure period.

摘要

吸入暴露系统是在各种暴露条件下确定吸入性毒物剂量反应关系的必要工具。本项目的目标是开发一种自动化的计算机控制系统,用于使小型实验动物暴露于精确浓度的空气中多壁碳纳米管(MWCNT)。开发了一种气溶胶发生器,它能够从散装材料中悬浮出可吸入部分的多壁碳纳米管。该发生器的输出用于使小型实验动物暴露于高达12 mg/m³的恒定气溶胶浓度下。对输送到暴露室的MWCNT气溶胶的颗粒分布和形态进行了测量,并与之前从生产MWCNT的设施内空气中采集的样品进行了比较。比较结果表明,MWCNT发生器产生的颗粒在大小和形状上与工作环境中发现的颗粒相似。吸入暴露系统将气流控制器、颗粒监测器、数据采集设备和定制软件与自动反馈控制相结合,以实现暴露室内温度、相对湿度、压力、气溶胶浓度和颗粒大小分布的恒定和可重复。自动控制算法能够将平均气溶胶浓度维持在选定目标值的0.1 mg/m³以内,并且在吸入暴露启动期间,能够在不到10分钟的时间内达到目标值的95%。该系统的一个主要优点是,一旦选定暴露参数,在暴露期间所需的操作员干预最少。

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